Lack of a functional methionine sulfoxide reductase (MsrB) increases oxacillin and H2O2 stress resistance and enhances pigmentation in Staphylococcus aureus

被引:7
|
作者
Singh, Vineet K. [1 ]
机构
[1] AT Still Univ Hlth Sci, Kirksville Coll Osteopath Med, Kirksville, MO 63501 USA
基金
美国国家卫生研究院;
关键词
Staphylococcus aureus; MsrB; H2O2; stress; oxacillin stress; OXIDATIVE STRESS; ANTIBIOTIC-RESISTANCE; EXPRESSION; ERA; STAPHYLOXANTHIN; TOLERANCE; VIRULENCE; PROTEINS; GENOMICS; SYSTEM;
D O I
10.1139/cjm-2014-0360
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Staphylococcus aureus produces 3 MsrA enzymes (MsrA1, MsrA2, and MsrA3) and 1 MsrB enzyme. The genes encoding MsrA1 and MsrB are the first and second genes of a 4-gene operon in S. aureus. In a previous study, MsrA1-deficient S. aureus cells showed increased sensitivity to oxidative stress conditions in spite of a higher production of MsrB. In this study, an msrB mutant of S. aureus was created by site-directed mutagenesis that left the first gene of this locus, msrA1, intact. Studies with this mutant suggest that a deletion of MsrB increases resistance of S. aureus to H2O2 and oxacillin and that the mutant cells produce a higher level of carotenoids relative to wild-type S. aureus cells.
引用
收藏
页码:625 / 628
页数:4
相关论文
共 50 条
  • [31] Perturbed 6-tetrahydrobiopterin recycling via decreased dihydropteridine reductase in vitiligo:: More evidence for H2O2 stress
    Hasse, S
    Gibbons, NCJ
    Rokos, H
    Marles, LK
    Schallreuter, KU
    JOURNAL OF INVESTIGATIVE DERMATOLOGY, 2004, 122 (02) : 307 - 313
  • [32] Global characterization of OsPIP aquaporins reveals that the H2O2 transporter OsPIP2;6 increases resistance to rice blast
    Gousi Li
    Jingluan Han
    Chen Yi
    Hao Luo
    Yuzhu Wang
    Fengpin Wang
    Xiaoyu Wang
    Letian Chen
    Yaling Zhang
    The Crop Journal, 2024, 12 (01) : 102 - 109
  • [33] Methionine sulfoxide reductases A and B2 protect MOLT-4 cells against H2O2 and zinc-mediated cell death and protein damage
    Cabreiro, F.
    Picot, C. R.
    Perichon, M.
    Friguet, B.
    Petropoulos, I.
    FREE RADICAL RESEARCH, 2008, 42 : S91 - S91
  • [34] Vascular O2•- and H2O2 production and oxidative stress resistance in two closely related rodent species with disparate longevity
    Csiszar, Anna
    Labinskyy, Nazar
    Ballabh, Praveen
    Austad, Steven N.
    Podlutsky, Andrej
    Ungvari, Zoltan
    FASEB JOURNAL, 2008, 22
  • [35] A Combination of Blue Light at 460 nm and H2O2 for the Safe and Effective Eradication of Staphylococcus aureus in an Infected Mouse Skin Abrasion Model
    Ngo, Vu Nguyen
    Truong, Thien Nguyen Thuan
    Tran, Tin Trung
    Nguyen, Loan Thanh
    Mach, Ngoc Bao
    Vu, Van Van
    Nguyen, Thi Thu Hoai
    Vu, Thiet Minh
    Singh, Vineet K.
    MICROORGANISMS, 2023, 11 (12)
  • [36] A ferroptosis-reinforced nanocatalyst enhances chemodynamic therapy through dual H2O2 production and oxidative stress amplification
    Zhu, Xiao-Yu
    Wang, Tian-Yu
    Jia, Hao-Ran
    Wu, Shun -Yu
    Gao, Cheng-Zhe
    Li, Yan-Hong
    Zhang, Xinping
    Shan, Bai-Hui
    Wu, Fu-Gen
    JOURNAL OF CONTROLLED RELEASE, 2024, 367 : 892 - 904
  • [37] H2O2 produced by viridans group streptococci may contribute to inhibition of methicillin-resistant Staphylococcus aureus colonization of oral cavities in newborns
    Uehara, Y
    Kikuchi, K
    Nakamura, T
    Nakama, H
    Agematsu, K
    Kawakami, Y
    Maruchi, N
    Totsuka, K
    CLINICAL INFECTIOUS DISEASES, 2001, 32 (10) : 1408 - 1413
  • [38] Expression of an alfalfa (Medicago sativa L.) peroxidase gene in transgenic Arabidopsis thaliana enhances resistance to NaCl and H2O2
    Teng, K.
    Xiao, G. Z.
    Guo, W. E.
    Yuan, J. B.
    Li, J.
    Chao, Y. H.
    Han, L. B.
    GENETICS AND MOLECULAR RESEARCH, 2016, 15 (02):
  • [39] Stress priming using X-irradiation or H2O2 treatment enhances growth and metabolite production in Chlamydomonas reinhardtii cells
    Dubey, Shubham Kumar
    Kim, Jin-Hong
    ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2024, 81
  • [40] Perennials have evolved a greater resistance to exogenous H2O2 than annuals, consistent with the oxidative stress theory of aging
    Zakhary, Abraam
    Nagarajan, Aashika
    Ngo, Charlotte
    Saidajan, Marwa
    Babbar, Supreet
    Brown, Jason C. L.
    BIOLOGIA, 2022, 77 (08) : 2063 - 2080